Books on the topic 'Gold electrode'

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1

Snyder, Trevor James. Visualization and heat transfer study of boiling in microgravity with and applied electric field utilizing single-bubble and surface-boiling semi-transparent gold-film heaters and three electrode geometries: diverging plate, flat plate, and pin electrode. Pullman, WA: School of Mechanical and Materials Engineering, Washington State University, 1995.

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2

J, Verkleij A., and Leunissen J. L. M, eds. Immuno-gold-labeling in cell biology. Boca Raton, Fla: CRC Press, 1989.

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3

Carter, D. Electrochemical and electron-microscopical studies of anodically corroded silver-gold alloys. [s.l.]: typescript, 1985.

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4

Ganter, Barbara E. Thermokraft abschreckend kondensierter Legierungsschichten: Am Beispiel des amorphen Legierungssystems Zinn-Gold und binärer Edelmetall, 3d-Metall Spingläser. Konstanz: Hartung-Gorre, 1986.

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5

Bell, L. D. Evidence of momentum conservation at a nonepitaxial metal/semiconductor interface using ballistic electron emission microscopy. [Washington, DC: National Aeronautics and Space Administration, 1996.

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6

Bell, L. D. Evidence of momentum conservation at a nonepitaxial metal/semiconductor interface using ballistic electron emission microscopy. [Washington, DC: National Aeronautics and Space Administration, 1996.

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7

Long, Susan Hill. The amazing Spider-Man: Spider-Man versus Electro. New York: HarperCollins, 2009.

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8

Seeck, Margitta, and Donald L. Schomer. Intracranial EEG Monitoring. Edited by Donald L. Schomer and Fernando H. Lopes da Silva. Oxford University Press, 2017. http://dx.doi.org/10.1093/med/9780190228484.003.0029.

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Intracranial electroencephalography (iEEG) is used to localize the focus of seizures and determine vital adjacent cortex before epilepsy surgery. The two most commonly used electrode types are subdural and depth electrodes. Foramen ovale electrodes are less often used. Combinations of electrode types are possible. The choice depends on the presumed focus site. Careful planning is needed before implantation, taking into account the results of noninvasive studies. While subdural recordings allow better mapping of functional cortex, depth electrodes can reach deep structures. There are no guidelines on how to read ictal intracranial EEG recordings, but a focal onset (<5 contacts) and a high-frequency onset herald a good prognosis. High-frequency oscillations have been described as a potential biomarker of the seizure onset zone. Intracranial recordings provide a focal but magnified view of the brain, which is also exemplified by the use of microelectrodes, which allow the recording of single-unit or multi-unit activity.
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9

Petersen, Erika A. Spinal Cord Stimulation. Edited by Mehul J. Desai. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780199350940.003.0032.

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Spinal cord stimulation is an effective strategy for managing chronic neuropathic pain that is refractory to other medical treatment. Proper patient selection and fastidious technique are essential to good outcomes. Electrodes can be placed through both percutaneous and laminotomy approaches. Care should be taken to minimize the risks of spinal electrode implantation: infection, neurologic injury, device migration, and device malfunction. Technological innovation and applications continue to improve rapidly, affording more options for treatment.
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10

D, Hyatt Alexander, and Eaton Bryan T, eds. Immuno-gold electron microscopy in virus diagnosis and research. Boca Raton, Fla: CRC Press, 1993.

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11

Pennycook, S. J., M. Varela, M. F. Chisholm, A. Y. Borisevich, A. R. Lupini, K. van Benthem, M. P. Oxley, et al. Scanning transmission electron microscopy of nanostructures. Edited by A. V. Narlikar and Y. Y. Fu. Oxford University Press, 2017. http://dx.doi.org/10.1093/oxfordhb/9780199533053.013.6.

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This article investigates nanostructures by means of scanning transmission electron microscopy. The electron microscope is uniquely suited to the study of individual nanostructures, allowing differentiation of different structures and properties that is difficult or impossible to do with techniques that provide a spatial average. The present generation of aberration correctors, which correct all aberrations up to third order, makes it possible to obtain sufficient sensitivity to image and spectroscopically analyze single atoms. This article begins with a brief overview of the correction of lens aberration in electron microscopy, followed by several examples of insights into nanomaterials and the atomic origins of their functionality. In particular, it considers semiconductor nanocrystals, semiconductor quantum wires, and nanocatalysts. It also discusses magnetism in gold and silver nanoclusters as well as charge ordering in manganites.
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12

Petrographic and scanning electron microscope studies of samples from the Roberts Mountains and Popovich Formations, Carlin Mine area, Eureka County, Nevada. Washington: U.S. G.P.O., 1987.

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13

Milev, Roumen. The role of electroconvulsive therapy in the treatment of bipolar disorder. Oxford University Press, 2017. http://dx.doi.org/10.1093/med/9780198748625.003.0027.

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This chapter examines the use of electroconvulsive therapy (ECT) for treatment of patients with bipolar disorders. It briefly reviews the basics of ECT, stimulus parameters, placement of electrodes, and seizure threshold. The data for efficacy and tolerability of ECT for bipolar disorder, including mania, depression, mixed states, and across the lifespan is reviewed. Although there is a paucity of good-quality randomized studies, all available data, including case reports and naturalistic observations, support the use of ECT in this population, and reinforce the widespread use of ECT in everyday clinical practice. Good-quality randomized control trials are urgently needed to address numerous unanswered questions, in order to improve efficacy and reduce side-effect burden of one of the best treatments for bipolar disorder.
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14

Watt, Alexander. Electro-Deposition, a Practical Treatise on the Electrolysis of Gold, Silver, Copper, Nickel, and Other Metals, and Alloys . . Creative Media Partners, LLC, 2018.

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15

Watt, Alexander. Electro-Deposition, a Practical Treatise on the Electrolysis of Gold, Silver, Copper, Nickel, and Other Metals, and Alloys . . Creative Media Partners, LLC, 2018.

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16

Xu, Yue-shu. Study of the decay ¹⁸⁴Au-¹⁸⁴Pt by means of gamma and electron spectroscopy and low temperature nuclear orientation. 1992.

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17

Xu, Yue-shu. Study of the decay ¹⁸⁴Au-¹⁸⁴Pt by means of gamma and electron spectroscopy and low temperature nuclear orientation. 1992.

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18

illustrator, Smith Andy 1969, Geraci Drew illustrator, and Pantazis Pete illustrator, eds. The amazing Spider-Man 2.: Spider-Man vs. Electro. 2014.

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19

Bernstein, Elliot R., ed. Chemical Reactions in Clusters. Oxford University Press, 1996. http://dx.doi.org/10.1093/oso/9780195090048.001.0001.

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This book covers important new developments of the last five years in the area of cluster chemistry, presenting an excellent view of the successes and shortcomings of both current state-of-the-art theory and experiment. Each chapter, contributed by a leading expert, places heavy emphasis on theory without which the detailed analysis of the spectroscopic and kinetic results would be compromised. The cluster reactions reviewed in this work include electron and proton transfer reactions, hot atom reactions, vibrational predissociation, radical reactions, and ionic reactions. Some of the theories applied throughout the text are product state distribution determinations, state-to-state dynamical information, and access to the transition stage of the reaction. The discussions serve as a benchmark of how far the field has come since the mid 1980's and will be a good update for students and researchers interested in this area of physical chemistry.
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20

Horne, James Henry Van. Modern Electro Plating: The Principles Involved in Depositing Gold, Silver, Nickel, Copper, Brass and Other Metals, by Means of Batteries or Dynamos; ... of Plating Baths, Chemicals Used, Etc. Franklin Classics Trade Press, 2018.

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21

Horne, James Henry Van. Modern Electro Plating: The Principles Involved in Depositing Gold, Silver, Nickel, Copper, Brass and Other Metals, by Means of Batteries or Dynamos; ... of Plating Baths, Chemicals Used, Etc. Franklin Classics Trade Press, 2018.

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22

Horne, James Henry Van. Modern Electro Plating. the Principles Involved in Depositing Gold, Silver, Nickel, Copper, Brass and Other Metals, by Means of Batteries or Dynamos; ... of Plating Baths, Chemicals Used, Etc. Franklin Classics Trade Press, 2018.

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23

Watt, Alexander. Electro-Deposition: A Practical Treatise on the Electrolysis of Gold, Silver, Copper, Nickel, and Other Metals, and Alloys, with Descriptions of ... and of the Materials and Processes Used. Franklin Classics Trade Press, 2018.

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24

Electro-deposition: A Practical Treatise on the Electrolysis of Gold, Silver, Copper, Nickel, and Other Metals, and Alloys, With Descriptions of ... and of the Materials and Processes Used. Franklin Classics, 2018.

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25

Dyall, Kenneth G., and Knut Faegri. Introduction to Relativistic Quantum Chemistry. Oxford University Press, 2007. http://dx.doi.org/10.1093/oso/9780195140866.001.0001.

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This book provides an introduction to the essentials of relativistic effects in quantum chemistry, and a reference work that collects all the major developments in this field. It is designed for the graduate student and the computational chemist with a good background in nonrelativistic theory. In addition to explaining the necessary theory in detail, at a level that the non-expert and the student should readily be able to follow, the book discusses the implementation of the theory and practicalities of its use in calculations. After a brief introduction to classical relativity and electromagnetism, the Dirac equation is presented, and its symmetry, atomic solutions, and interpretation are explored. Four-component molecular methods are then developed: self-consistent field theory and the use of basis sets, double-group and time-reversal symmetry, correlation methods, molecular properties, and an overview of relativistic density functional theory. The emphases in this section are on the basics of relativistic theory and how relativistic theory differs from nonrelativistic theory. Approximate methods are treated next, starting with spin separation in the Dirac equation, and proceeding to the Foldy-Wouthuysen, Douglas-Kroll, and related transformations, Breit-Pauli and direct perturbation theory, regular approximations, matrix approximations, and pseudopotential and model potential methods. For each of these approximations, one-electron operators and many-electron methods are developed, spin-free and spin-orbit operators are presented, and the calculation of electric and magnetic properties is discussed. The treatment of spin-orbit effects with correlation rounds off the presentation of approximate methods. The book concludes with a discussion of the qualitative changes in the picture of structure and bonding that arise from the inclusion of relativity.
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26

Peet, Deborah J., Patrick Horton, Colin J. Martin, and David G. Sutton. Radiotherapy: external beam radiotherapy. Oxford University Press, 2015. http://dx.doi.org/10.1093/med/9780199655212.003.0019.

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Design principles for radiotherapy facilities using X-ray, γ‎-ray, and electron beams are described, especially the requirements for primary and secondary shielding and maze and door entrances. These features are illustrated with reference to the shielded rooms (bunkers) required for linear accelerators, and example calculations are included for shielding and maze design to achieve required dose constraints. The impact of new clinical practices with intensity modulated radiation fields and flattening filter-free operation is also considered. Engineering controls and features for safe operation are described, and good practice in bunker construction and the provision of services to avoid weaknesses in the shielding is outlined. The principle shielding requirements for TomoTherapyTM, CyberKnifeTM, Gamma KnifeTM units, and kilovoltage X-ray units are also described. Finally, personnel monitoring, commissioning surveys, and environmental monitoring in radiation protection management in radiotherapy are discussed. Data for calculating shielding thickness and X-ray scatter for maze design are provided.
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27

Horne, James Henry Van. Modern Electro Plating. the Principles Involved in Depositing Gold, Silver, Nickel, Copper, Brass and Other Metals, by Means of Batteries or Dynamos; the Preparation and Management of Plating Baths, Chemicals Used, Etc. Creative Media Partners, LLC, 2018.

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28

Horne, James Henry Van. Modern Electro Plating: The Principles Involved in Depositing Gold, Silver, Nickel, Copper, Brass and Other Metals, by Means of Batteries or Dynamos; the Preparation and Management of Plating Baths, Chemicals Used, Etc. Creative Media Partners, LLC, 2018.

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29

Horne, James Henry Van. Modern Electro Plating: The Principles Involved in Depositing Gold, Silver, Nickel, Copper, Brass and Other Metals, by Means of Batteries or Dynamos; the Preparation and Management of Plating Baths, Chemicals Used, Etc. Creative Media Partners, LLC, 2018.

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30

Horne, James Henry Van. Modern Electro Plating: The Principles Involved in Depositing Gold, Silver, Nickel, Copper, Brass and Other Metals, by Means of Batteries or Dynamos; the Preparation and Management of Plating Baths, Chemicals Used, Etc. Creative Media Partners, LLC, 2018.

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31

T. [From Old Catalog] Harper. Electro-Plating Made Easy. the Silver Plater's Handbook; a Clear and Comprehensive Treatise on the Art of Gold, Silver and Nickel Plating, Either with or Without the Aid of the Electric Current. Creative Media Partners, LLC, 2018.

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32

T [From Old Catalog] Harper. Electro-Plating Made Easy. the Silver Plater's Handbook; A Clear and Comprehensive Treatise on the Art of Gold, Silver and Nickel Plating, Either with or Without the Aid of the Electric Current. Franklin Classics Trade Press, 2018.

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33

T. [From Old Catalog] Harper. Electro-Plating Made Easy. the Silver Plater's Handbook; a Clear and Comprehensive Treatise on the Art of Gold, Silver and Nickel Plating, Either with or Without the Aid of the Electric Current. Creative Media Partners, LLC, 2018.

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34

Watt, Alexander. Electro-Deposition: A Practical Treatise on the Electrolysis of Gold, Silver, Copper, Nickel, and Other Metals, and Alloys, with Descriptions of Voltaic Batteries, Magneto and Dynamo-Electric Machines, Thermopiles, and of the Materials and Processes Used. Creative Media Partners, LLC, 2018.

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35

Freeman, Richard R., James A. King, and Gregory P. Lafyatis. Electromagnetic Radiation. Oxford University Press, 2019. http://dx.doi.org/10.1093/oso/9780198726500.001.0001.

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Electromagnetic Radiation is a graduate level book on classical electrodynamics with a strong emphasis on radiation. This book is meant to quickly and efficiently introduce students to the electromagnetic radiation science essential to a practicing physicist. While a major focus is on light and its interactions, topics in radio frequency radiation, x-rays, and beyond are also treated. Special emphasis is placed on applications, with many exercises and homework problems. The format of the book is designed to convey the basic concepts of a topic in the main central text in the book in a mathematically rigorous manner, but with detailed derivations routinely relegated to the accompanying side notes or end of chapter “Discussions.” The book is composed of four parts: Part I is a review of basic E&M, and assumes the reader has a had a good upper division undergraduate course, and while it offers a concise review of topics covered in such a course, it does not treat any given topic in detail; specifically electro- and magnetostatics. Part II addresses the origins of radiation in terms of time variations of charge and current densities within the source, and presents Jefimenko’s field equations as derived from retarded potentials. Part III introduces special relativity and its deep connection to Maxwell’s equations, together with an introduction to relativistic field theory, as well as the relativistic treatment of radiation from an arbitrarily accelerating charge. A highlight of this part is a chapter on the still partially unresolved problem of radiation reaction on an accelerating charge. Part IV treats the practical problems of electromagnetic radiation interacting with matter, with chapters on energy transport, scattering, diffraction and finally an illuminating, application-oriented treatment of fields in confined environments.
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